科技报告详细信息
Nuclear Physics Science Network Requirements Workshop, May 2008 - Final Report
Tierney, Ed., Brian L ; Dart, Ed., Eli ; Carlson, Rich ; Dattoria, Vince ; Ernest, Michael ; Hitchcock, Daniel ; Johnston, William ; Kowalski, Andy ; Lauret, Jerome ; Maguire, Charles ; Olson, Douglas ; Purschke, Martin ; Rai, Gulshan ; Watson, Chip ; Vale, Carla
关键词: 97;    BNL;    HEAVY IONS;    NUCLEAR PHYSICS;    PIPELINES;    PRODUCTIVITY;    RELIABILITY Network Requirements;   
DOI  :  10.2172/944531
RP-ID  :  LBNL-1289E
PID  :  OSTI ID: 944531
Others  :  TRN: US0900607
美国|英语
来源: SciTech Connect
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【 摘 要 】

The Energy Sciences Network (ESnet) is the primary provider of network connectivity for the US Department of Energy Office of Science, the single largest supporter of basic research in the physical sciences in the United States of America. In support of the Office of Science programs, ESnet regularly updates and refreshes its understanding of the networking requirements of the instruments, facilities, scientists, and science programs that it serves. This focus has helped ESnet to be a highly successful enabler of scientific discovery for over 20 years. In May 2008, ESnet and the Nuclear Physics (NP) Program Office of the DOE Office of Science organized a workshop to characterize the networking requirements of the science programs funded by the NP Program Office. Most of the key DOE sites for NP related work will require significant increases in network bandwidth in the 5 year time frame. This includes roughly 40 Gbps for BNL, and 20 Gbps for NERSC. Total transatlantic requirements are on the order of 40 Gbps, and transpacific requirements are on the order of 30 Gbps. Other key sites are Vanderbilt University and MIT, which will need on the order of 20 Gbps bandwidth to support data transfers for the CMS Heavy Ion program. In addition to bandwidth requirements, the workshop emphasized several points in regard to science process and collaboration. One key point is the heavy reliance on Grid tools and infrastructure (both PKI and tools such as GridFTP) by the NP community. The reliance on Grid software is expected to increase in the future. Therefore, continued development and support of Grid software is very important to the NP science community. Another key finding is that scientific productivity is greatly enhanced by easy researcher-local access to instrument data. This is driving the creation of distributed repositories for instrument data at collaborating institutions, along with a corresponding increase in demand for network-based data transfers and the tools to manage those transfers effectively. Network reliability is also becoming more important as there is often a narrow window between data collection and data archiving when transfer and analysis can be done. The instruments do not stop producing data, so extended network outages can result in data loss due to analysis pipeline stalls. Finally, as the scope of collaboration continues to increase, collaboration tools such as audio and video conferencing are becoming ever more critical to the productivity of scientific collaborations.

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